The simplest equation of state for liquid water is the so-called stiffened-gas equation of state in the form c(y – 1)T - yII P (9.129) where y = 4 – 7, II = 4 × 10® Pa, and c = 4200 k.Jkg¬'K¯!. (a) Determine the volumetric thermal expansion of this liquid at T = 100°C and P = 1 MPa. (b) De- termine the isothermal compressibility of this liquid at T = 100°C and P = 1 MPa. %3D

Elements Of Electromagnetics
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The simplest equation of state for liquid water is the so-called stiffened-gas equation
of state in the form
c(y – 1)T
- II
P =
(9.129)
where y = 4 – 7, II = 4 × 10° Pa, and c = 4200 kJkg¯'K!. (a) Determine the
volumetric thermal expansion of this liquid at T = 100°C and P = 1 MPa.(b) De-
termine the isothermal compressibility of this liquid at T = 100°C and P = 1 MPa.
Transcribed Image Text:The simplest equation of state for liquid water is the so-called stiffened-gas equation of state in the form c(y – 1)T - II P = (9.129) where y = 4 – 7, II = 4 × 10° Pa, and c = 4200 kJkg¯'K!. (a) Determine the volumetric thermal expansion of this liquid at T = 100°C and P = 1 MPa.(b) De- termine the isothermal compressibility of this liquid at T = 100°C and P = 1 MPa.
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